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Microstructure and Properties of Ni–Co Composite Cladding Coating on Mould Copper Plate

机译:模具铜板上Ni-Co复合熔覆层的组织与性能

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摘要

In this study, a Ni–Co composite coating was fabricated successively on a copper substrate by laser, and the microstructure and properties of the composite coating were studied. Our results show that the elements from Ni and Co alloy powder were uniformly distributed in the binding region, which obtained a good metallurgical bonding with the substrate. The microhardness of Co-based coatings was 646 HV0.1, which was approximately 7.6 times greater than the hardness of Cu substrate. The Ni-based coating hardness was a little lower than that of the Co-based coating, which was approximately 7.0 times higher than the hardness of Cu substrate. The Co-based coating was comprised of reinforced phases, such as Co, Ni–Cr–Co–Mo, M7C3 and {Fe, Ni}. The wear volume of Co-based coatings was approximately 0.164 mm3 after the sliding wear test at 60 min, which was only 4% of the substrate’s wear volume. Meanwhile, the heat shock resistance experiment was carried out at 800 °C for 75 times before the Ni–Co composite coating was peeled off. It was shown that this Ni–Co composite coating had good wear resistance and high temperature properties, which is helpful to improve the service life of a mould copper plate. It not only saves the economic cost of steel plants, but also improves the quality of slabs and products.
机译:在这项研究中,通过激光在铜基体上连续制备了Ni-Co复合涂层,并研究了该复合涂层的微观结构和性能。我们的结果表明,镍和钴合金粉末中的元素均匀地分布在结合区中,从而与基底获得了良好的冶金结合。 Co基涂层的显微硬度为646 HV0.1,约为Cu基底硬度的7.6倍。 Ni基涂层的硬度略低于Co基涂层的硬度,后者比Cu基体的硬度大约高7.0倍。钴基涂层由增强相组成,例如Co,Ni-Cr-Co-Mo,M7C3和{Fe,Ni}。经过60分钟的滑动磨损测试后,Co基涂层的磨损量约为0.164 mm 3 ,仅占基材磨损量的4%。同时,在剥离Ni-Co复合涂层之前,在800°C下进行了75次耐热冲击试验。结果表明,这种Ni-Co复合涂层具有良好的耐磨性和高温性能,有助于延长模具铜板的使用寿命。它不仅节省了钢铁厂的经济成本,而且提高了板坯和产品的质量。

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